Viscous Dissipation and Mass Transfer Effects of FlowPast a Parabolic Started Vertical Plate with VariableTemperature and Mass Diffussion

J. Girish Kumar*
Lecturer in Mathematics, Government Degree College, Jammalamadugu, Kadapa (Dt.)
Periodicity:January - March'2015
DOI : https://doi.org/10.26634/jmat.4.1.3237

Abstract

Viscous dissipation effects on the unsteady natural convective flow past a parabolic starting motion of the infinite vertical plate with variable temperature and variable mass diffusion is investigated. The plate temperature and the concentration level near the plate are raised linearly with time. The dimensionless governing unsteady, non-linear, coupled partial equations are solved by using the unconditionally stable explicit finite difference method of DuFort – Frankel's type. The effect of velocity profiles are studied for different physical parameters like Eckert number, Prandtl number, thermal Grashof number, mass Grashof number, Schmidt number, and time. It is observed that the velocity increases as the value of the thermal Grashof number or mass Grashof number increase. The trend is just reversed with respect to the Schmidt number.

Keywords

Viscous Dissipation, Parabolic Started Vertical Plate, Variable Temperature, Variable Concentration.

How to Cite this Article?

Kumar, J.G. (2015). Viscous Dissipation and Mass Transfer Effects of Flow Past a Parabolic Started Vertical Plate with Variable Temperature and Mass Diffussion. i-manager’s Journal on Mathematics, 4(1), 40-45. https://doi.org/10.26634/jmat.4.1.3237

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